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Switched Reluctance Motor Drive for Full Electric Vehicles - Part I: Analysis

机译:用于全电动车的开关磁阻电机驱动器 - 第一部分:分析

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This paper describes a control approach to reduce the torque ripple of the switched reluctance motor (SRM) employed as a prime mover in a full electric vehicle (FEV). The SRM drive, which was originally installed in the prototype electric vehicle was facing significant torque ripple at low speeds. The implemented control solution allowed to overcome this problem. The presented approach is based on the extensive mathematical modeling of the SRM drive. The nonlinear characteristics of the SRM have been obtained with the finite element method (FEM) software. The obtained FEM results have further been used in a transient lumped-parameter Matlab/Simulink model of the SRM drive, where the so-called Torque Sharing Function control technique with optimized control parameters was implemented to reduce the torque ripple and also to increase efficiency.
机译:本文描述了一种控制方法,以减少作为在全电动车辆(FEV)中作为主要动器的开关磁阻电动机(SRM)的扭矩脉动。 最初安装在原型电动车辆的SRM驱动器处于低速下的显着扭矩纹波。 所实现的控制解决方案允许克服这个问题。 所提出的方法基于SRM驱动器的广泛数学建模。 使用有限元方法(FEM)软件获得了SRM的非线性特性。 所获得的有限元件进一步用于SRM驱动器的瞬态集成参数Matlab / Simulink模型中,其中实现了具有优化控制参数的所谓的扭矩共享功能控制技术,以减少扭矩脉动并增加效率。

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